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Recent Advances of Activatable Molecular Probes Based on Semiconducting Polymer Nanoparticles in Sensing and Imaging

机译:基于半导体高分子纳米粒子的可活化分子探针在传感和成像中的最新进展

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Abstract Molecular probes that change their signals in response to the target of interest have a critical role in fundamental biology and medicine. Semiconducting polymer nanoparticles (SPNs) have recently emerged as a new generation of purely organic photonic nanoagents with desirable properties for biological applications. In particular, tunable optical properties of SPNs allow them to be developed into photoluminescence, chemiluminescence, and photoacoustic probes, wherein SPNs usually serve as the energy donor and internal reference for luminescence and photoacoustic probes, respectively. Moreover, facile surface modification and intraparticle engineering provide the versatility to make them responsive to various biologically and pathologically important substances and indexes including small-molecule mediators, proteins, pH and temperature. This article focuses on recent advances in the development of SPN-based activatable molecular probes for sensing and imaging. The designs and applications of these probes are discussed in details, and the present challenges to further advance them into life science are also analyzed.
机译:摘要响应于目标靶而改变信号的分子探针在基础生物学和医学中具有至关重要的作用。半导体聚合物纳米粒子(SPN)最近作为具有生物学特性的新一代纯有机光子纳米剂出现。特别地,SPN的可调光学特性使它们可以发展为光致发光,化学发光和光声探针,其中SPN通常通常分别用作发光和光声探针的能量供体和内部参考。此外,简便的表面修饰和颗粒内工程设计提供了多功能性,使其对各种生物学和病理学上重要的物质和指标(包括小分子介质,蛋白质,pH和温度)有反应。本文重点介绍基于SPN的可激活分子探针用于传感和成像的最新进展。详细讨论了这些探针的设计和应用,并分析了将探针进一步推进生命科学的当前挑战。

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